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Digital Compatible Synthesis, Placement and Implementation of Mixed-Signal Time-Domain Computing

机译:混合信号时域计算的数字兼容综合,布局和实现

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Mixed-signal time-domain computing (TC) has recently drawn significant attention due to its high efficiency in applications such as machine learning accelerators. However, due to the nature of analog and mixed-signal design, there is a lack of a systematic flow of synthesis and place & route for time-domain circuits. This paper proposed a comprehensive design flow for TC. In the front-end, a variation-aware digital compatible synthesis flow is proposed. In the back-end, a placement technique using graph-based optimization engine is proposed to deal with the especially stringent matching requirement in TC. Simulation results show significant improvement over the prior analog placement methods. A 55nm test chip is used to demonstrate that the proposed design flow can meet the stringent timing matching target for TC with significant performance boost over conventional digital design.
机译:由于混合信号时域计算(TC)在诸如机器学习加速器之类的应用中具有很高的效率,因此最近引起了广泛的关注。然而,由于模拟和混合信号设计的性质,对于时域电路缺乏系统的综合流程和布局布线。本文提出了TC的综合设计流程。在前端,提出了一种变体感知数字兼容合成流程。在后端,提出了一种使用基于图的优化引擎的布局技术来处理TC中特别严格的匹配要求。仿真结果表明,与现有的模拟放置方法相比,已有显着改进。使用55nm测试芯片来证明所提出的设计流程可以满足TC严格的时序匹配目标,并且与传统的数字设计相比,性能可以得到显着提升。

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